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Interfacial fatigue damage behavior of fiber reinforced rubber-A combined experimental and cohesive zone model approach

机译:纤维增强橡胶的界面疲劳损伤行为 - 一种综合实验性和凝聚区模型方法

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摘要

The interfacial damage behavior of short fiber reinforced rubber sealing composites (SRRC) under fatigue load is researched in this article, where an experimental and cohesive zone model approach are employed. The fiber mass fractions of samples are 2%, 5%, and 10%, respectively. The curves of the fatigue strain (epsilon( n)) varying with the fatigue cycle number (n) were obtained by the fatigue test. The damage patterns of SRRC with different fiber mass fractions were confirmed by scanning electron microscope. A finite element model (FEM) was established to predict interfacial fatigue damage, where the cohesive element was imbedded in the interface between fiber and matrix. The results show that the epsilon( n)-n curves of SRRC predicted by FEM agree well with experimental data when fiber mass fractions are high. The samples with 5% fiber mass fraction are optimal to restrain the origination of the interfacial abhesion, and a possible damage path of SRRC is obtained.
机译:本文研究了疲劳负荷下的短纤维增强橡胶密封复合材料(SRRC)的界面损伤行为,其中采用了实验和粘性区域模型方法。 样品的纤维质量分量分别为2%,5%和10%。 通过疲劳试验获得疲劳菌株(ε(n))的疲劳菌株(ε(n))的曲线。 通过扫描电子显微镜确认具有不同纤维质量级分的SRRC的损伤模式。 建立有限元模型(FEM)以预测界面疲劳损伤,其中粘合元件嵌入纤维和基质之间的界面中。 结果表明,当纤维质量级分高时,由FEM预测的SRRC的epsilon(n)曲线与实验数据很好。 具有5%纤维质量分数的样品是最佳的,以抑制界面的起源,并且获得了SRRC的可能损伤路径。

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